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生物可吸收神经导管中的大鼠雪旺细胞促进并加速轴突再生。

Rat Schwann cells in bioresorbable nerve guides to promote and accelerate axonal regeneration.

作者信息

Schlosshauer Burkhard, Müller Erhard, Schröder Bernhard, Planck Heinrich, Müller Hans-Werner

机构信息

NMI Naturwissenschaftliches und Medizinisches Institut, Universität Tübingen, Markwiesenstrasse 55, D-72770, Reutlingen, Germany.

出版信息

Brain Res. 2003 Feb 14;963(1-2):321-6. doi: 10.1016/s0006-8993(02)03930-6.

Abstract

A micro-structured, biodegradable, semipermeable hollow nerve guide implant was developed to bridge nerve lesions. Quantitative comparison of cell migration and axonal growth using time lapse video recording in vitro revealed that axons grow eight times faster than neuritotrophic Schwann cells migrate. To accelerate regeneration, purified Schwann cells are best injected into nerve guides before implantation. Nerve guides made from resorbable poly-lactide-co-glycolide support Schwann cell attachment, cell survival, and axonal outgrowth in vitro. The therapeutic concept aims at the development of an 'intelligent neuroprosthesis' that first mediates regeneration and then disappears.

摘要

一种用于桥接神经损伤的微结构、可生物降解、半透性中空神经导管植入物被研发出来。通过体外延时视频记录对细胞迁移和轴突生长进行定量比较发现,轴突生长速度比神经营养性雪旺细胞迁移速度快八倍。为加速再生,最好在植入前将纯化的雪旺细胞注入神经导管。由可吸收的聚乳酸-乙醇酸共聚物制成的神经导管在体外支持雪旺细胞附着、细胞存活和轴突生长。该治疗理念旨在开发一种“智能神经假体”,它首先介导再生,然后消失。

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